Literature DB >> 29308352

Impact of protein-ligand solvation and desolvation on transition state thermodynamic properties of adenosine A2A ligand binding kinetics.

Giuseppe Deganutti1, Andrei Zhukov2, Francesca Deflorian2, Stephanie Federico3, Giampiero Spalluto3, Robert M Cooke2, Stefano Moro1, Jonathan S Mason2, Andrea Bortolato2.   

Abstract

Ligand-protein binding kinetic rates are growing in importance as parameters to consider in drug discovery and lead optimization. In this study we analysed using surface plasmon resonance (SPR) the transition state (TS) properties of a set of six adenosine A2A receptor inhibitors, belonging to both the xanthine and the triazolo-triazine scaffolds. SPR highlighted interesting differences among the ligands in the enthalpic and entropic components of the TS energy barriers for the binding and unbinding events. To better understand at a molecular level these differences, we developed suMetaD, a novel molecular dynamics (MD)-based approach combining supervised MD and metadynamics. This method allows simulation of the ligand unbinding and binding events. It also provides the system conformation corresponding to the highest energy barrier the ligand is required to overcome to reach the final state. For the six ligands evaluated in this study their TS thermodynamic properties were linked in particular to the role of water molecules in solvating/desolvating the pocket and the small molecules. suMetaD identified kinetic bottleneck conformations near the bound state position or in the vestibule area. In the first case the barrier is mainly enthalpic, requiring the breaking of strong interactions with the protein. In the vestibule TS location the kinetic bottleneck is instead mainly of entropic nature, linked to the solvent behaviour.

Entities:  

Keywords:  Biacore; Ligand binding kinetics; Metadynamics; Molecular dynamics; SPR; Supervised molecular dynamics

Year:  2017        PMID: 29308352      PMCID: PMC5755719          DOI: 10.1007/s40203-017-0037-x

Source DB:  PubMed          Journal:  In Silico Pharmacol        ISSN: 2193-9616


  72 in total

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7.  Controlling the Dissociation of Ligands from the Adenosine A2A Receptor through Modulation of Salt Bridge Strength.

Authors:  Elena Segala; Dong Guo; Robert K Y Cheng; Andrea Bortolato; Francesca Deflorian; Andrew S Doré; James C Errey; Laura H Heitman; Adriaan P IJzerman; Fiona H Marshall; Robert M Cooke
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  5 in total

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Journal:  J Med Chem       Date:  2022-09-06       Impact factor: 8.039

2.  Selective activation of Gαob by an adenosine A1 receptor agonist elicits analgesia without cardiorespiratory depression.

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3.  Deciphering the Agonist Binding Mechanism to the Adenosine A1 Receptor.

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Review 4.  In Silico Drug Design for Purinergic GPCRs: Overview on Molecular Dynamics Applied to Adenosine and P2Y Receptors.

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5.  New Insights into Key Determinants for Adenosine 1 Receptor Antagonists Selectivity Using Supervised Molecular Dynamics Simulations.

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Journal:  Biomolecules       Date:  2020-05-07
  5 in total

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